Rapid safety screening realized by accelerating rate calorimetry with lab-scale small batteries

  • Ko, Seongjae
  • Otsuka, Hiromi
  • Kimura, Shin
  • Takagi, Yuta
  • Yamaguchi, Shoji
  • 외 2명
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초록

The increasing energy density and size requirements have necessitated the establishment of reliable safety technologies for rechargeable batteries. In particular, understanding and controlling thermal runaway, an uncontrollable heat generation from continuous exothermic reactions in batteries, is essential for developing high-safety batteries. However, comprehensive safety evaluations at the full-cell level are limited by size requirements (greater than the ampere-hour scale) for performing accelerating rate calorimetry tests that can provide critical information on heat generation during thermal runaway. Further, efficient safety screening is difficult because of substantial quantities of battery materials and costly manufacturing processes. Here we designed cylindrical pouch-type small batteries (similar to 21 mAh, similar to 0.1 g of cathode active materials) that are highly susceptible to heat generation, thus allowing us to perform full-cell-level accelerating rate calorimetry tests on a laboratory scale. This enables rapid safety screening and early-stage feedback for battery design, which can help accelerate the development of high-safety batteries.

키워드

LITHIUM-ION BATTERYTHERMAL-STABILITYELECTRODE MATERIALSGRAPHITE ANODERUNAWAYCATHODEBEHAVIORDECOMPOSITIONISSUES
제목
Rapid safety screening realized by accelerating rate calorimetry with lab-scale small batteries
저자
Ko, SeongjaeOtsuka, HiromiKimura, ShinTakagi, YutaYamaguchi, ShojiMasuda, TakuyaYamada, Atsuo
DOI
10.1038/s41560-025-01751-7
발행일
2025-04
유형
Article; Early Access
저널명
NATURE ENERGY
10
6
페이지
707 ~ 714